首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >The Work Softening by Deformation-Induced Disordering and Cold Rolling of 6.5 wt pct Si Steel Thin Sheets
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The Work Softening by Deformation-Induced Disordering and Cold Rolling of 6.5 wt pct Si Steel Thin Sheets

机译:6.5 wt%硅钢薄板的变形引起的无序变形和冷轧导致的工作软化

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As-cast strip of 6.5 wt pct Si steel was fabricated by twin-roll strip casting. After hot rolling at 1323 K (1050 A degrees C), thin sheets with the thickness of 0.35 mm were produced by warm rolling at 373 K (100 A degrees C) with rolling reductions of 15, 25, 35, 45, 55, and 65 pct. Influence of warm rolling reduction on ductility was investigated by room temperature bending test. The measurement of macro-hardness showed that "work softening" could begin when the warm rolling reduction exceeded 35 pct. The room temperature ductility of the thin sheets gradually increased with the increase of warm rolling reductions, and the plastic deformation during bending began to form when the warm rolling reduction was greater than 45 pct, the 65 pct rolled thin sheet exhibited the maximum plastic deformation of about 0.6 pct during bending at room temperature, with a few small dimples having been observed on the fracture surfaces. B2-ordered domains were formed in the 15, 25, 35, 45, and 55 pct rolled specimens, and their average size decreased with the increase of warm rolling reductions. By contrast, no B2-ordered domain could be found in the 65 pct rolled specimen. It had been observed that large-ordered domains could be split into several small parts by the slip of partial super-dislocations during warm rolling, which led to significant decrease of the order degree to cause the phenomenon of deformation-induced disordering. On the basis of these results, cold rolling schedule was developed to successfully fabricate 0.25-mm-thick sheets with good surface qualities and magnetic properties from warm rolled sheets.
机译:通过双辊薄带连铸来制造6.5 wt%的硅钢铸态薄带。在1323 K(1050 A摄氏度)进行热轧后,通过在373 K(100 A摄氏度)进行热轧,压下率分别为15、25、35、45、55和55毫米,生产出厚度为0.35毫米的薄板。 65 pct。通过室温弯曲试验研究了热轧压下率对延展性的影响。宏观硬度的测量表明,当热轧压下率超过35 pct时,“工作软化”可能开始。随着热轧压下量的增加,薄板的室温延展性逐渐增加,当热轧压下量大于45 pct时,弯曲过程中的塑性变形开始形成,其中65 pct轧制薄板表现出最大的塑性变形。在室温弯曲期间大约0.6%,在断裂表面上观察到一些小凹痕。在15、25、35、45和55 pct的轧制试样中形成了B2序域,其平均尺寸随着热轧压下量的增加而减小。相比之下,在65 pct滚动的标本中找不到B2有序的域。已经观察到,在热轧过程中,部分超位错的滑移可将大序域分为几个小部分,从而导致有序度显着降低,从而引起变形引起的无序现象。根据这些结果,制定了冷轧方案,以成功地从热轧板中制造出具有良好表面质量和磁性的0.25毫米厚板。

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